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Mechanisms of Development|March 1, 1994
Development of sibling inbred sea urchins: normal embryogenesis, but frequent postembryonic malformation, arrest and lethalityP S Leahy, R A Cameron, M A Knox, et al.Chromosoma|July 30, 1976
Absence of short period interspersion of repetitive and non-repetitive sequences in the DNA of Drosophila melanogasterW R Crain, F C Eden, W R Pearson, et al.Journal of Molecular Evolution|December 31, 1976
Evolutionary divergence and length of repetitive sequences in sea urchin DNAR J Britten, D E Graham, F C Eden, et al.Journal of Molecular Biology|March 25, 1984
Regulation of cytoplasmic mRNA prevalence in sea urchin embryos. Rates of appearance and turnover for specific sequencesC V Cabrera, J J Lee, J W Ellison, et al.Cell|September 1, 1978
Specific representation of cloned repetitive DNA sequences in sea urchin RNAsR H Scheller, F D Costantini, M R Kozlowski, et al.Science (New York, N.Y.)|May 30, 1980
Evolutionary conservation of repetitive sequence expression in sea urchin egg RNA'sG P Moore, F D Costantini, J W Posakony, et al.Chromosoma|January 1, 1981
Molecular structure of maternal RNAT L Thomas, J W Posakony, D M Anderson, et al.Developmental Biology|June 1, 1992
Territorial expression of three different trans-genes in early sea urchin embryos detected by a whole-mount fluorescence procedureR W Zeller, R A Cameron, R R Franks, et al.Developmental Biology|June 1, 1995
SpGCF1, a sea urchin embryo DNA-binding protein, exists as five nested variants encoded by a single mRNAR W Zeller, J A Coffman, M G Harrington, et al.Genes & Development|November 1, 1990
Intersecting batteries of differentially expressed genes in the early sea urchin embryoP Thiebaud, M Goodstein, F J Calzone, et al.Pageof 20